• Infrared and Laser Engineering
  • Vol. 49, Issue 8, 20200228 (2020)
Shan Jiang1, Dongsong Sun2, Fei Han2, Danfeng Xiong1, Dongcai Liu1, and Anran Zhou2
Author Affiliations
  • 1School of Physics and Material Engineering, Hefei Normal University, Hefei 230601, China
  • 2School of Earth and Space Science, University of Science and Technology of China, Hefei 230031, China
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    DOI: 10.3788/IRLA20200228 Cite this Article
    Shan Jiang, Dongsong Sun, Fei Han, Danfeng Xiong, Dongcai Liu, Anran Zhou. Design and test of laser wind measurement system for yaw control of wind turbine[J]. Infrared and Laser Engineering, 2020, 49(8): 20200228 Copy Citation Text show less

    Abstract

    In order to measure the incoming wind information before it reaches a wind turbine, a laser wind measurement system was developed for need of yaw control of wind turbine based on continuous wave coherence detection. A direct drive(DD) motor was installed in the scanner to drive a wedge lens with 15° vertex angle for laser conical scanning in the atmosphere. The scan period is 15 s, and has 30 sampling points. The sinusoidal fitting method was used to retrieve the velocity and direction of the incoming wind field of wind turbine. The laser wind measurement system was installed under the meteorological gradient observation tower in Shenzhen, and a comparative experiment was carried out with the ultrasonic anemometer on the tower. Measured data were compared and the results are as follows: the correlation coefficient of horizontal wind speed was 0.98 and the standard deviation was 0.22 m/s, the correlation coefficient of wind direction data was 0.97 and the standard deviation was 3.04°. It shows that the laser wind measurement system has satisfactory performance and can provide accurate parameters of wind turbine, which is conducive to improve the efficiency of wind energy utilization.
    Shan Jiang, Dongsong Sun, Fei Han, Danfeng Xiong, Dongcai Liu, Anran Zhou. Design and test of laser wind measurement system for yaw control of wind turbine[J]. Infrared and Laser Engineering, 2020, 49(8): 20200228
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